Influence of errors in coordinate transformation due to uncertainties of the design matrix
Coordinate transformation between reference systems is a habitual task in geodetic sciences. Several transformation models and adjustment of observations algorithms have been explored. The most popular approach uses the well-known Ordinary Least Squares method (OLS) which seeks to estimate unknown p...
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Published in | Applied geomatics Vol. 5; no. 4; pp. 247 - 254 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.12.2013
Springer |
Subjects | |
Online Access | Get full text |
ISSN | 1866-9298 1866-928X |
DOI | 10.1007/s12518-013-0114-8 |
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Abstract | Coordinate transformation between reference systems is a habitual task in geodetic sciences. Several transformation models and adjustment of observations algorithms have been explored. The most popular approach uses the well-known Ordinary Least Squares method (OLS) which seeks to estimate unknown parameters in a linear regression model by minimizing the sum of squared residuals while assuming that the observations are subject to normally distributed random noise. Although this approach has been widely used on many applications, its assumption regarding the distribution of errors is unrealistic. An alternative model created to deal with non normal–random distributions of errors is the Total Least Square model (TLS). Although several approaches have been suggested for representing the errors in the design matrix, most of them fail in including errors with different stochastic characteristics truthfully. This paper presents an assessment of the quality of a Helmert transformation of 2D coordinates when different precisions in both the observation vector and the design matrix exist. Two algorithms were analyzed: the OLS, and the Improved Weighted Total Least Squares (IWTLS). The transformation parameters obtained through IWTLS and OLS show significant differences among them when the variances in the coordinate systems are different. When assessing the transformation of coordinates using control points, it becomes clear that both algorithms perform the same in terms of the quality of the transformation. Furthermore, it is shown that an analysis based on the residuals obtained in the least squares adjustment is not a reliable tool to assess the overall quality of the transformation. |
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AbstractList | Coordinate transformation between reference systems is a habitual task in geodetic sciences. Several transformation models and adjustment of observations algorithms have been explored. The most popular approach uses the well-known Ordinary Least Squares method (OLS) which seeks to estimate unknown parameters in a linear regression model by minimizing the sum of squared residuals while assuming that the observations are subject to normally distributed random noise. Although this approach has been widely used on many applications, its assumption regarding the distribution of errors is unrealistic. An alternative model created to deal with non normal–random distributions of errors is the Total Least Square model (TLS). Although several approaches have been suggested for representing the errors in the design matrix, most of them fail in including errors with different stochastic characteristics truthfully. This paper presents an assessment of the quality of a Helmert transformation of 2D coordinates when different precisions in both the observation vector and the design matrix exist. Two algorithms were analyzed: the OLS, and the Improved Weighted Total Least Squares (IWTLS). The transformation parameters obtained through IWTLS and OLS show significant differences among them when the variances in the coordinate systems are different. When assessing the transformation of coordinates using control points, it becomes clear that both algorithms perform the same in terms of the quality of the transformation. Furthermore, it is shown that an analysis based on the residuals obtained in the least squares adjustment is not a reliable tool to assess the overall quality of the transformation. |
Audience | Academic |
Author | de Freitas, Sílvio Rogério Correia Montecino Castro, Henry Santibanez, Sebastian |
Author_xml | – sequence: 1 givenname: Henry surname: Montecino Castro fullname: Montecino Castro, Henry email: henrymontecino@gmail.com organization: Federal University of Parana – sequence: 2 givenname: Sebastian surname: Santibanez fullname: Santibanez, Sebastian organization: Federal University of Parana – sequence: 3 givenname: Sílvio Rogério Correia surname: de Freitas fullname: de Freitas, Sílvio Rogério Correia organization: Federal University of Parana |
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Cites_doi | 10.1061/(ASCE)0733-9453(2004)130:3(138) 10.1061/(ASCE)0733-9453(1996)122:1(26) 10.1061/(ASCE)SU.1943-5428.0000055 10.1007/s00190-007-0190-9 10.1007/s00190-010-0408-0 10.1179/003962606781482134 10.1137/1.9781611971002 10.1061/(ASCE)0733-9453(1997)123:4(147) 10.2307/2635777 10.1137/0717073 10.1007/978-3-7091-6199-9 10.1016/j.cageo.2004.05.003 10.1007/978-3-642-00860-3_33 10.1016/j.sigpro.2007.04.004 10.1007/s001900050243 10.1061/(ASCE)0733-9453(2005)131:2(43) 10.1007/978-94-017-3552-0_7 10.1007/BF00867152 10.1186/BF03353115 |
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Keywords | Adjustment of observations Total least squares Gauss Markov model Similarity transformation |
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SubjectTerms | Algorithms Analysis Coordinate transformations Design engineering Earth and Environmental Science Errors Geographical Information Systems/Cartography Geography Geophysics/Geodesy Least squares method Mathematical models Measurement Science and Instrumentation Original Paper Quality assessment Remote Sensing/Photogrammetry Surveying Transformations |
Title | Influence of errors in coordinate transformation due to uncertainties of the design matrix |
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